English

Baryon asymmetry via leptogenesis in a neutrino mass model with complex scaling

High Energy Physics - Phenomenology 2017-03-22 v2

Abstract

Baryogenesis via leptogenesis is investigated in a specific model of light neutrino masses and mixing angles. The latter was proposed on the basis of an assumed complex-extended scaling property of the neutrino Majorana mass matrix MνM_\nu, derived with a type-1 seesaw from a Dirac mass matrix mDm_D and a heavy singlet neutrino Majorana mass matrix MRM_R. One of its important features, highlighted here, is that there is a common source of the origin of a nonzero θ13\theta_{13} and the CP violating lepton asymmetry through the imaginary part of mDm_D. The model predicted CP violation to be maximal for the Dirac type and vanishing for the Majorana type. We assume strongly hierarchical mass eigenvalues for MRM_R. The leptonic CP asymmetry parameter ε1α\varepsilon^\alpha_{1}\hspace{1mm} with lepton flavor α\alpha, originating from the decays of the lightest of the heavy neutrinos N1N_1 (of mass M1M_1) at a temperature TM1T\sim M_1, is what matters here with ε2,3α\varepsilon^\alpha_{2,3}, originating from the decays of N2,3N_{2,3}, being washed out. The light leptonic and heavy neutrino number densities (normalized to the entropy density) are evolved via Boltzmann equations down to electroweak temperatures to yield a baryon asymmetry through sphaleronic transitions. The effect of flavored vs. unflavored leptogenesis in the three mass regimes (1) M1<109M_1<10^{9} GeV, (2) 10910^9 GeV <M1<<M_1< 101210^{12} GeV and (3) M1>1012M_1>10^{12} GeV are numerically worked out for both a normal and an inverted mass ordering of the light neutrinos. Corresponding results on the baryon asymmetry of the universe are obtained, displayed and discussed.

Keywords

Cite

@article{arxiv.1610.10081,
  title  = {Baryon asymmetry via leptogenesis in a neutrino mass model with complex scaling},
  author = {Rome Samanta and Mainak Chakraborty and Probir Roy and Ambar Ghosal},
  journal= {arXiv preprint arXiv:1610.10081},
  year   = {2017}
}

Comments

17 pages, 19 figures, effect of $N_2$ leptogenesis is added in Sec. 6, version to appear in JCAP